MGA-30689 AVAGO | Alldatasheet
Document overview
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- PDF pages: 16
Technical content
Features
- Flat Gain 14dB +/-0.5dB, 40MHz to 2600MHz
- High linearity
- Built in temperature compensated internal bias circuitry
- No RF matching components required
- GaAs E-pHEMT Technology[1]
- Standard SOT89 package
- Single, Fixed 5V supply
- Excellent uniformity in product specifications
- MSL-2 and Lead-free halogen free
- High MTTF for base station application Specifications
- 900MHz; 5V, 104mA (typical) – 14.3 dB Gain – 43 dBm Output IP3 – 3.0 dB Noise Figure – 22.3 dBm Output Power at 1dB gain compression
- 1950MHz, 5V, 104mA (typical) – 14.6 dB Gain – 40 dBm Output IP3 – 3.3 dB Noise Figure – 22.5 dBm Output Power at 1dB gain compression Note: 1. Enhancement mode technology employs positive gate voltage, thereby eliminating the need of negative gate voltage associated with conventional depletion mode devices. 6GX Top View RFin GND RFout #1 #2 #3 Bottom View RFout GND RFin #3 #2 #1
Electrical Specifications [7] TA = 25°C, Vdd =5V Symbol Parameter and Test Condition Frequency Units Min. Typ. Max. Ids Quiescent current N/A mA 80 104 125 Gain Gain 40MHz 900MHz 1950MHz dB 13.7 14.8 14.3 14.6 16.7 OIP3 [8] Output Third Order Intercept Point 40MHz 900MHz 1950MHz dBm 37.5 40 – NF Noise Figure 40MHz 900MHz 1950MHz dB 2.9 3.0 3.3 4 S11 Input Return Loss, 50Ω source 40MHz 900MHz 1950MHz dB -13 -12 -15 S22 Output Return Loss, 50Ω load 40MHz 900MHz 1950MHz dB -18 -15 -12 S12 Reverse Isolation 40MHz 900MHz 1950MHz dB -20 -22 -25 OP1dB Output Power at 1dB Gain Compression 40MHz 900MHz 1950MHz dBm 21.2 21.8 22.4 22.5 – Notes: 7. Measurements obtained using demo board described in Figure 30 and 31. 40MHz data was taken with 40MHz – 2GHz Application Test Circuit, 8. OIP3 test condition: FRF1 – FRF2 = 10MHz with input power of -15dBm per tone measured at worse side band. 9. Use proper bias, heat sink and de-rating to ensure maximum channel temperature is not exceeded. See absolute maximum ratings and application note (if applicable) for more details.
Table 1. 40 MHz – 2 GHz Application Schematic Components Table 2. 0.2 GHz – 3 GHz Application Schematic Components Table 3. 1.5 GHz – 2.6 GHz Application Schematic Components Figure 32. S-parameter and Noise parameter test circuit
Typical S-Parameter (Vdd=5V, T=25°C, 50 ohm) Freq (GHz) S11 (dB) S11 (ang) S21 (dB) S21 (ang) S12 (dB) S12 (ang) S22 (dB) S22 (ang)
Typical Noise Parameters (Vdd=5V, T=25°C, 50 ohm) Freq (GHz) Fmin (dB) Γopt Mag Γopt Ang Rn/Z0
D E L b e e1S C b1 b A OR 1.24 1.23 0.77
0.2 HALF ETCHING
1.625 2.35 DEPTH 0.100 E D E L e e1S OR Dimensions in mm Dimensions in inches Symbols Minimum Nominal Maximum Minimum Nominal Maximum E 3.94 - 4.25 0.155 - 0.167
NOTES: 1. 10 SPROCKET HOLE PITCH CUMULATIVE TOLERANCE ±0.2 2. CAMBER IN COMPLIANCE WITH EIA 481 3. POCKET POSITION RELATIVE TO SPROCKET HOLE MEASURED AS TRUE POSITION OF POCKET, NOT POCKET HOLE 12.0 ± .3 Ao = 4.60 Bo = 4.90 Ko = 1.90 5.50 ± .05 SEE NOTE 3 1.75 ± .10 8.00 Ø 1.5 +0.1/-0.0 2.00 ± .05 SEE NOTE 3
4.00 SEE NOTE 1
Ø 1.50 MIN. Ao Ko R 0.3 TYP . R 0.3 MAX. 0.30 ± .05 A A Bo USER FEED DIRECTION COVER TAPE CARRIER TAPE REEL 6GX 6GX 6GX 6GX Part Number Ordering Information Part Number No. of Devices Container MGA-30689-BLKG 100 antistatic bag MGA-30689-TR1G 3000 13” Tape/ Reel
For product information and a complete list of distributors, please go to our web site: www.avagotech.com Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright © 2005-2013 Avago Technologies. All rights reserved. AV02-1876EN - May 23, 2013 Reel Dimensions – 13” Reel Ø 20.2 M IN 2.0 ± 0.5 Ø 13.0 +0.5 -0.2 102.0 REF 330.0 REF 8.4(MEASURED AT HUB) (MEASURED AT HUB) "A" ATTENTION Electrostatic Sensitive Devices Safe Handling Required MINNEAPOLIS USA U.S PAT 4726534 R LOKREEL R 11.1 MAX. Detail "A" Detail "B" PS PS 1.5
88 REF
96.5 +0.3 - 0.2 Dimensions in mm